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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Modelling the transverse behaviour of circular tunnels in structured clayey soils during earthquakes
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Modelling the transverse behaviour of circular tunnels in structured clayey soils during earthquakes

机译:建模地震过程中结构粘土土圆形隧道的横向行为

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The paper presents novel results from advanced numerical simulations of the transverse behaviour of shallow circular tunnels in natural clays accounting for soil structure degradation induced by earthquake loading. It combines the calibration of a kinematic hardening model against real laboratory data with outputs from a parametric study with different degradation rates of soil structure to demonstrate the good performance of the model and draw conclusions of significance to both researchers and designers. The sensitivity analysis indicates an increase in the maximum and minimum values of the lining forces attained during the earthquake motions and in the lining hoop force and bending moment increments in response to the seismic events when higher rates of destructuration are accounted for. Hence, the paper highlights for the first time the importance of the initial structure and its degradation in controlling the magnitude of the tunnel lining forces and, consequently, the overall seismic tunnel design.
机译:本文介绍了浅圆形隧道横发概况的高级数值模拟的新颖,天然粘土核算土壤结构降解造成地震载荷。它将运动硬化模型与来自参数研究的输出的校准相结合,具有不同的土壤结构的不同劣化率,以展示模型的良好性能,并为研究人员和设计师提供重要性的结论。灵敏度分析表明在地震运动期间达到的衬里力的最大值和最小值的增加,并且在占据较高的破坏率时,响应地震事件的衬里箍力和弯曲力矩的增量增加。因此,本文首次亮点初始结构的重要性及其在控制隧道衬里力量的大小方面的劣化以及整体地震隧道设计。

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